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Protein trafficking on sliding clamps

机译:滑动夹具上的蛋白质运输

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摘要

The sliding clamps of chromosomal replicases are acted upon by both the clamp loader and DNA polymerase. Several other proteins and polymerases also interact with the clamp. These proteins bind the clamp at the same spot and use it in sequential fashion. First the clamp loader must bind the clamp in order to load it onto DNA, but directly thereafter the clamp loader must clear away from the clamp so it can be used by the replicative DNA polymerase. At the end of replication, the replicase is ejected from the clamp, which presumably allows the clamp to interact with yet other proteins after its use by the replicase. This paper describes how different proteins in the Escherichia coli replicase, DNA polymerase III holoenzyme, coordinate their traffic flow on the clamp. The mechanism by which traffic flow on the beta clamp is directed is based on competition of the proteins for the clamp, where DNA structure modulates the competition. It seems likely that the principles will generalize to a traffic flow of other factors on these circular clamp proteins. [References: 26]
机译:染色体复制物的滑动夹具受夹具加载器和DNA聚合酶的作用。其他几种蛋白质和聚合酶也与夹具相互作用。这些蛋白质在同一位置结合钳并以顺序方式使用。首先,夹具装载器必须结合夹具以将其装载到DNA上,但是此后,夹具装载器必须直接从夹具上清除,以便复制DNA聚合酶可以使用它。复制结束时,复制酶会从钳中弹出,这可能会使钳在被复制酶使用后与其他蛋白质相互作用。本文描述了大肠杆菌复制酶中的不同蛋白质(DNA聚合酶III全酶)如何在钳位上协调其流量。引导β钳上的流量的机制基于蛋白质对钳的竞争,其中DNA结构调节竞争。原理似乎很可能会推广到这些环形钳蛋白上其他因素的流量。 [参考:26]

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